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Completed

NCT Number: NCT04044118

Calorie Restriction Intervention Induces Enterotype-associated BMI Loss in Nonobese Individuals

Calorie restriction (CR), which has the potential effect on weight loss and blood amino acids, has been demonstrated to associate with gut microbiota in humans, especially in obese individuals. However, studies for simultaneously evaluating enterotype-dependent impacts of CR on the gut microbiota and blood amino acids in nonobese individuals are still limited.

Here, 41 nonobese individuals received a 3-week CR diet with approximately 50% fewer calories than a normal diet. The investigators measured individuals' BMI and blood amino acid concentration, along with the gut microbiota before and after the intervention. In this trial, 28 Enterotype Bacteroides (ETB) subjects and 13 Enterotype Prevotella (ETP) subjects were identified before the intervention.

The purpose of this intervention study is to evaluate the effect of calorie restriction on BMI loss, amino acid, and gut microbiota in healthy volunteers of two different enterotypes and provide useful insights for potential application of gut microbiome stratification in personalized nutrition intervention.

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Key information

Conditions

Age range

22 year–53 year

Sex eligibility

All sexes

Study type

Interventional

Phase

Not applicable

Primary location

BGI-Shenzhen, Guangdong, China

Shenzhen, Guangdong, 518083, China

About this study

  • Volunteer Recruitment

Volunteer-wanted posters were propagated at the China National Gene Bank in Shenzhen from March to April 2017. A non-obese healthy volunteer was considered if his/her BMI less than 28 kg/m2. 50 individuals met all the criteria and were recruited in this study, and 41 individuals (24 females and 17 males aged 30 ± 6 years old) completed the whole intervention. The study was approved by the institutional review board on bioethics and biosafety of BGI-Shenzhen, Shenzhen (NO. BGI-IRB 17020). All participates were fully informed of the design and purpose of this intervention study and signed a written informed consent letter.

  • Experiment Process

The study included a one-week run-in period (baseline) and a three-week CR dietary intervention period. During the first week (run-in period), all healthy volunteers consumed their usual diet and were encouraged to avoid yogurt, high-fat foods, and alcohol. The CR diet was comprised of ~50% calories of a normal-calorie diet (female, 1000kcal/day; male, 1200kcal/day). It was designed with carbohydrate, fat, and protein as approximately 55%, 30% and 15% of the total energy intake respectively, according to the Dietary Guidelines for Chinese Residents (2016) and nutritionally balanced and a recent large nutritional study in China. Common foods in low-calorie diets such as rice, vegetables, eggs, pork, and beef were prepared in the investigators' study center to control experimental variables introduced by different foods and calorie estimation errors.

Traditional Chinese cooking style - boiled, stir-fried and stewed, were applied for the foods. For each meal, digital scales were used to measure the nutritional and caloric values of different foods and total meal for males and females respectively.

  • Sample and Data Collection

BMI, blood and fecal samples of each volunteer were collected at the investigators' study center at baseline and after the 3-week CR intervention. BMI was measured via the clinic scale. The concentrations of 31 amino acids and derivatives in the fasting serum samples were measured by LC-MS/MS. The gut microbial composition was determined using shotgun metagenomics sequencing of fecal DNA.

Who can participate

Healthy volunteers accepted: Yes

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • BMI less than 28 kg/m2 and more than 18 kg/m2;
  • without antibiotics in the recent 2 months;
  • regular eating and lifestyle patterns;
  • no international travel in the recent 3 month;
  • without hypertension, diabetes mellitus, gastrointestinal disease and other severe auto-immune disease;
  • without prebiotic or probiotic supplements in the recent 2 months;

Exclusion criteria

  • with antibiotics in the recent 2 months;
  • Failure to comply with experimental requirement;

Treatment and study plan

Low calorie diet

Behavioral

Low Calorie Diet consisted of ~50% calories of a normal-calorie diet (female, 1000kcal/day; male, 1200kcal/day)

Primary outcomes

  1. change in BMI of all volunteers (n=41) following calorie restriction dietary intervention

    Time frame: at baseline and after 3-week calorie restriction dietary intervention

    BMI was be measured via clinic scale.

  2. different changes in BMI between enterotype Bacteroides (n=28) and enterotype Prevotella (n=13) follow calorie restriction dietary intervention

    Time frame: at baseline and after 3-week calorie restriction dietary intervention

    BMI was be measured via clinic scale.

Secondary outcomes

  1. change in concentration of amino acids of 36 volunteers following calorie restriction dietary intervention

    Time frame: at baseline and after 3-week calorie restriction dietary intervention

    Fasting blood sample for measurement of 31 amino acids

  2. different changes in concentration of 31 amino acids (fasting status) between enterotype Bacteroides (n=25) and enterotype Prevotella (n=11) follow calorie restriction dietary intervention

    Time frame: at baseline and after 3-week calorie restriction dietary intervention

    Fasting blood sample for measurement of 31 amino acids

  3. change in gut microbiota of all volunteers (n=41) following calorie restriction intervention

    Time frame: at baseline and after 3-week calorie restriction dietary intervention

    faecal bacterial composition determined from microbiological cultures and deep metagenomic next-generation sequencing of bacterial DNA in fece

  4. different changes in gut microbiota between enterotype Bacteroides (n=28) and enterotype Prevotella (n=13) follow calorie restriction dietary intervention

    Time frame: at baseline and after 3-week calorie restriction dietary intervention

    faecal bacterial composition determined from microbiological cultures and deep metagenomic next-generation sequencing of bacterial DNA in fece

Sponsors and collaborators

Lead sponsor

BGI-Shenzhen

Industry

Registry information

Acronym: CRDI

Important dates

Study start
2017
Primary completion
2017
Study completion
2018
First posted
Aug 5, 2019
Registry last updated
Aug 5, 2019

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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